Investigation of thermal mode of hot-rolling mill working rolls in order to improve the accuracy of calculating the thermal profile of their barrels’ surface

D. Shalaevskii
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Abstract

Thermal mode of the working roll barrel in a hot-rolling mill is a significant technological factor that affects the steel strip quality, its cross section, and durability of working rolls. A reliable calculation of the temperature mode parameters makes it possible to determine the thermal profile shape and the best profiling of the roll barrel surface, as well as to reduce defects in steel strip flatness. The most common is the balance model of roll thermal mode. Its accuracy is largely determined by thermophysical constants, in particular, the heat transfer coefficients of the rolls: contact – with the strip and convective – with cooling water. There are various data on the values ​​and methods for calculating these coefficients, but most of them do not take into account the presence of pauses in rolling rhythm of the finishing group of stands, the duration of which is significant. Failure to take this factor into account entails significant errors in calculations of the thermal mode. A passive experiment was carried out, during which surface temperatures of the working rolls’ barrels were measured using a thermocouple at several points along their length immediately after they fell out. Also, the parameters of steel strip rolling before roll change were determined: rolling rhythm coefficients, strip reduction in stands, water consumption for cooling rolls and some others. As a result, an empirical equation was obtained for calculating the contact heat transfer coefficient, taking into account the main technological factors. The use of refined coefficients for calculating the temperatures of the roll barrel significantly increased the accuracy of predicting the thermal mode, in particular, the thermal profile of the working roll, based on values ​​of the rolling parameters.
对热轧机工作辊的热模式进行了研究,以提高其筒体表面热廓形的计算精度
热轧机工作辊筒的热方式是影响带钢质量、横截面和工作辊耐久性的重要工艺因素。通过对温度模态参数的可靠计算,可以确定辊筒表面的热型形和最佳型形,减少钢带平整度缺陷。最常见的是轧辊热模平衡模型。它的准确性很大程度上取决于热物理常数,特别是轧辊的传热系数:与带钢的接触和与冷却水的对流。关于计算这些系数的数值和方法有各种各样的数据,但大多数数据都没有考虑到在整场组的滚动节奏中存在的停顿,而停顿的持续时间是很重要的。如果不考虑这一因素,就会在热模态的计算中产生重大错误。进行了被动实验,在此过程中,使用热电偶测量了工作辊筒在其脱落后立即沿其长度的几个点的表面温度。确定了换辊前的带钢轧制参数:轧制节奏系数、机架带钢减量、冷却辊耗水量等。得到了考虑主要工艺因素的接触换热系数计算公式。利用改进系数计算辊筒温度,显著提高了基于轧制参数值预测热模式,特别是工作辊热分布的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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